Rösti Johannes, Barton Christopher J, Albrecht Sandra, Dupree Paul, Pauly Markus, Findlay Kim, Roberts Keith, Seifert Georg J
Department of Cell and Developmental Biology, John Ines Centre, NR4 7UH Norwich, United Kingdom.
Plant Cell. 2007 May;19(5):1565-79. doi: 10.1105/tpc.106.049619. Epub 2007 May 11.
Five Arabidopsis thaliana genes that encode UDP-glucose 4-epimerase (UGE) and represent two ancient plant UGE clades might be involved in the regulation of cell wall carbohydrate biosynthesis. We tested this hypothesis in a genome-wide reverse genetic study. Despite significant contributions of each gene to total UGE activity, none was essential for normal growth on soil. uge2 uge4 displayed dramatic general growth defects, while other mutant combinations were partially aberrant. UGE2 together with UGE3 influenced pollen development. UGE2 and UGE4 synergistically influenced cell wall galactose content, which was correlated with shoot growth. UGE2 strongly and UGE1 and UGE5 lightly supported UGE4 in influencing root growth and cell wall galactose content by affecting galactan content. By contrast, only UGE4 influenced xyloglucan galactosylation in roots. Secondary hypocotyl thickening and arabinogalactan protein carbohydrate structure in xylem parenchyma depended on the combination of UGE2 and UGE4. As opposed to cell wall galactose content, tolerance to external galactose strictly paralleled total UGE activity. We suggest a gradual recruitment of individual UGE isoforms into specific roles. UGE2 and UGE4 influence growth and cell wall carbohydrate biosynthesis throughout the plant, UGE3 is specialized for pollen development, and UGE1 and UGE5 might act in stress situations.
五个编码UDP-葡萄糖4-表异构酶(UGE)且代表两个古老植物UGE进化枝的拟南芥基因可能参与细胞壁碳水化合物生物合成的调控。我们在一项全基因组反向遗传学研究中对这一假设进行了测试。尽管每个基因对总UGE活性都有显著贡献,但没有一个基因对在土壤上正常生长是必需的。uge2 uge4表现出明显的整体生长缺陷,而其他突变组合则部分异常。UGE2与UGE3共同影响花粉发育。UGE2和UGE4协同影响细胞壁半乳糖含量,这与地上部生长相关。UGE2强烈支持且UGE1和UGE5轻微支持UGE4通过影响半乳聚糖含量来影响根生长和细胞壁半乳糖含量。相比之下,只有UGE4影响根中的木葡聚糖半乳糖基化。次生胚轴增厚和木质部薄壁组织中的阿拉伯半乳聚糖蛋白碳水化合物结构取决于UGE2和UGE4的组合。与细胞壁半乳糖含量不同,对外源半乳糖的耐受性与总UGE活性严格平行。我们认为单个UGE同工型逐渐被招募到特定角色中。UGE2和UGE4影响整个植物的生长和细胞壁碳水化合物生物合成,UGE3专门负责花粉发育,而UGE1和UGE5可能在应激情况下发挥作用。